THE OXYGEN IN THE INTENSIVE TREATMENT AND ANAESTHESIOLOGY – PROS AND CONS?
https://doi.org/10.21292/2078-5658-2015-12-3-56-64
Abstract
Oxygen is an important component of the critical therapy, however its excessive intake can cause a number of adverse effects. The review describes the benefits and toxic effects of oxygen, as well as its use in the intensive treatment and anesthesiology.
About the Authors
M. M. SokolovaRussian Federation
V. V. Kuzkov
Russian Federation
L. N. Rodionova
Russian Federation
M. Yu. Kirov
Russian Federation
References
1. Geraskin V.A. Giperoksiya i okislitelnye modifikatsii lipidov krovi kak faktory razvitiya anemii u novorozhdennykh detey. Diss. kand. med. nauk. [Hyperoxia and oxidative modifications of blood lipids as factors of anemia development in newborns. Cand. Diss.]. 14.00.16. Saransk, 2004, 102 p.
2. Zhilyaeva S.Yu., Alekseeva O.S., Postnikova T.Yu. et al. Cooperative involvement of nitrogen oxide and endothelin in hyperoxic vasoconstriction. Ros. Phyziol. J. im. I.M. Sechenov, 2011, vol. 97,pp. 14-15. (In Russ.)
3. Kuzkov V.V., Kirov M.Yu. Invasivny monitoring hemodinamiki v intensivnoy treapii i anesteziologii. [Invasive monitoring of hemodynamics in intensive therapy and anesthesiology]. Arkhangelsk, Northern State Medical University Publ., 2015, 392 p.
4. Marino P.L. Intesivnaya terapiya. [Rus. Ed.: Marino P.L. Intensive therapy]. Ed. by A.P. Zilber. Moscow, GEOTAR-Media Publ., 2010, 768 p.
5. Marochkov A.V., Lipnitsky A.L., Akulich N.V. Impact of various oxygen concentrations, used during multi-component endotracheal anesthesia on structural and functional parameters of erythrocytes. Obsch. Reanimatol., 2012, vol. 7, 11-16. (In Russ.)
6. Yakovlev N.V. Vliyaniye giperbaricheskoy oksigenatsii v klinichesky primenyaemykh rezhimakh na perekisnoye okisleniye lipidov i antioksidantnuyu aktivnost legkikh zdorovogo organizma. Diss. kand. med. nauk. [Impact of hyperbaric oxygenation in clinically applied regimens on lipid peroxygenation and antioxidant activity of the lungs of the healthy host. Cand. Diss.]. 03.00.13. Kursk, 2004, 127 p.
7. Abdelsalam M. Permissive hypoxemia: is it time to change our approach? Chest, -2006. vol. 129, pp. 210-211.
8. Austin M.A., Wills K.E., Blizzard L. et al. Effect of high flow oxygen on mortality in chronic obstructive pulmonary disease in prehospital setting: randomised controlled trail. BJM, 2010, vol. 341, pp. 54-62.
9. Baleeiro C.E., Wilcoxen S.E., Norris S.B. Sublethal hyperoxia impairs pulmonary innate immunity. J. Immunol., 2003, vol. 171, pp. 955-963.
10. Bellomo R., Bailey M., Eastwood G.M. et al. Arterial hyperoxia in hospital mortality after resuscitation from cardiac arrest. Crit. Care, 2011, vol. 15, pp. 90.
11. Bitterman H. Bench-to-bedside review: oxygen as a drug. Crit. Care, 2009, vol. 13, pp. 205.
12. Cabello J.B., Burls A., Emparanza J.I. Oxygen therapy for acute myocardial infarction. Cochrane Database. Syst Rev., 2010, vol. 16, CD007160.
13. Damiani E., Adrario E., Girardis M. еt al. Arterial hyperoxia and mortality in critically ill patients: a systematic review and meta-analysis. Crit. Care, 2014, vol. 18, pp. 711.
14. Davis P.G., Tan A., O’Donnell C.P. et al. Resuscitation of newborn infants with 100% oxygen or air: a systematic review and meta-analysis. Lancet, 2004, vol. 364, pp. 1329-1333.
15. Deakin C.D., Nolan J.P., Soar J. et al. European Resuscitation Council Guidelines for Resuscitation 2010 Section 4. Adult advanced life support. Resuscitation, 2010, vol. 81, pp. 1305-1352.
16. Decalmer S., O’Driscoll B.R. Oxygen: friend or foe in peri-operative care? Anaesthesia, 2013, vol. 68, pp. 8-12.
17. Demchenko I.T., Welty-Wolf K.A., Allen B.W. Similar but not the same: normobaric and hyperbaric pulmonary oxygen toxicity, the role of nitric oxide. Am. J. Physiol. Lung Cell Mol. Phisiol., 2007, vol. 293, pp. 229-238.
18. Eastwood G., Bellomo R., Bailey M. et al. Arterial oxygen tension and mortality in mechanically ventilated patient. Crit. Care, 2012, vol. 38, pp. 91-98.
19. Edmark L., Enlund M., Kostova‐Aherdan K. et al. Atelectasis formation and apnoea tolerance after pre‐oxygenation with 100%, 80%, or 60% oxygen. Anesthesiology, 2001, vol. 95, pp. A1330.
20. Gregory A.H., Thierry M.S., Maurice L.L. еt al. Ventilatory management during routine general anaesthesia. Eur. J. Anaesth., 2009, vol. 26, pp. 1-8.
21. Grocott M.P., Martin D.S., Levett D.Z. et al. Arterial blood gases and oxygen content in climbers on Mount Everest. N. Engl. J. Med., 2009, vol. 360, pp. 140-149.
22. Halliwel B., Gutteridge J.M. Oxygen toxicity, oxygen radicals, transition metals and disease. Biochem J., 1984, vol. 219, pp. 1-14.
23. Haque W.A., Boehmer J., Clemson B.S. at al. Hemodynamic effects of supplemental oxygen administration in congestive heart failure. J. Am. Coll. Cardio., 1996, vol. 27, pp. 353-357.
24. Harten W.A., Anderson K.J., Booth M.G. et al. The effect of normobaric hyperoxia on cardiac index in healthy awake volunteers. Anaesthesia, 2003, vol. 58, pp. 885-888.
25. Hazelton J.L., Balan I., Elmer G.I. еt al. Hyperoxic reperfusion after global cerebral ischemia promotes inflammation and long-term hippocampal neuronal death. J. Neurotrauma, 2010, vol. 27, pp. 753-762.
26. Hedenstierna G., Edmark L., Aherdan K.K. Time to reconsider the preoxygenation during induction of anaesthesia. Minerva Anestesiol., 2000, vol. 66, pp. 293-296.
27. Jauch E.C., Saver J.L., Adams H.P. Guidelines for the early management of patients with acute ischemic stroke: a guideline for healthcare professionals from the American Heart Association/American Stroke Association. Stroke, 2013, vol. 44, pp. 870-947.
28.
29. Kilgannon J.H., Jones A.E., Shapiro N.I. et al. Association between arterial Hyperoxia following resuscitation from cardiac arrest and in-hospital mortality. J. Am. Med. Assoc., 2010, vol. 303, pp. 2165-2171.
30. Le Roux P. Normoxia and Hyperoxia in Neuroprotection. Yearbook Int. Care Med., 2014, pp. 449-461.
31. Le Roux P. Physiological monitoring of the severe traumatic brain injury patient in the intensive care unit. Curr. Neurol Neurosci Rep., 2013, vol. 13, pp. 331.
32. Martin D.S., Grocott M.P.W. Oxygen Therapy in Anaesthesia. Br. J. Anaesth., 2013, vol. 111, pp. 867-887.
33. Meyhoff C.S., Staehr A.K., Rasmussen L.S. Rational use of oxygen in medical disease and anaesthesia. Curr. Opin. Anaesthesiol., 2012, vol. 25, pp. 363-370.
34. Meyhoff C.S., Wetterslev J., Jorgensen L.N. еt al. Effects of high perioperative oxygen fraction in surgical site infection and pulmonary complication after abdominal surgery: the PROXI randomized clinical trail. JAMA, 2009, vol. 302, pp. 1543-1550.
35. Mikkelsen M.E., Christie J.D., Hopkins R.O. et al. Can we optimize long-term outcome in acute respiratory distress syndrome by targeting normoxemia? Ann. Am. Thorac. Soc. 2014, vol. 11, pp. 1449-1153.
36. Niklas A., Brock D., Schober R. et al. Continuous measurement of cerebral tissue oxygen pressure during hyperbaric oxygenation-HBO effects on brain edema and necrosis after severe brain trauma in rabbits. J. Neurol. Sci., 2004, vol. 219, pp. 77-82.
37. O’Driscoll B.R., Howard L.S., Davison A.G. BTS guideline for emergency oxygen use in adult patient. Thorax, 2008, vol. 63, pp. 68.
38. Pileher J., Weatherall M., Shirtcliffe M. et al. The effects of hyperoxia following cardiac arrest. A systematic review and meta-analysis of animal trails. Resuscitation, 2012, vol. 83, pp. 417-422.
39. Rabi Y., Rabi D., Yee W. Room air resuscitation of the depressed newborn: a systematic review and meta-analysis. Resuscitation, 2007, vol. 72, pp. 353-363.
40. Remert M., Schaller B., Widmer H.R. et al. Influence of oxygen therapy on glucose-lactate metabolism after diffuse brain injury. J. Neurosurg., 2004, vol. 101, pp. 323-329.
41. Ronning O.M., Guldvog B. Should stroke victims routinely receive supplemental oxygen? A quasi-randomized controlled trail. Stroke, 1999, vol. 30, pp. 2033-2037.
42. Sjoberg F., Singer M. The medical use of oxygen: a time for critical reappraisal. Journal of Internal Medicine, 2013, vol. 274, pp. 505-528.
43. Sinclair S.E., Altemeier W.A., Matyte-Bello G. at al. Augmented lung injury due to interaction between hyperoxia and mechanical ventelation. Crit. Care Med., 2004, vol. 32, pp. 2496-2501.
44. Sokolova M., Rodionova L., Yurkova O. et al. The effects of perioperative ventilation on cognitive function following laparoscopic cholecystectomy. Eur. J. Anaesth., 2015, In print.
45. Stub D., Smith K., Bernard M. et al. A randomized controlled trail of oxygen therapy in myocardial infarction study (AVOID study). Am. Heart J., 2012, vol. 163, pp. 339-345.
46. Suzuki S., Eastwood G.M., Bellomo R.A. Re-evaluation of oxygen therapy and hyperoxemia in critical care. Yearbook Int. Care Med., 2014, pp. 81-91.
47. The acute Respiratory Distress Syndrome Network. N. Engl. J. Med., 2000, vol. 342, pp. 1301–1308.
48. The C2015 Consensus Conference – access mode: https://volunteer.heart. org/apps/pico/Pages/default.aspx.
Review
For citations:
Sokolova M.M., Kuzkov V.V., Rodionova L.N., Kirov M.Yu. THE OXYGEN IN THE INTENSIVE TREATMENT AND ANAESTHESIOLOGY – PROS AND CONS? Messenger of ANESTHESIOLOGY AND RESUSCITATION. 2015;12(3):56-64. (In Russ.) https://doi.org/10.21292/2078-5658-2015-12-3-56-64